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Biomedical subjects

M M Moore

Publications and source records attributed to M M Moore.

At least 73 records · Page 4Linked to original sources

Quantification of t(14;18) in the lymphocytes of healthy adult humans as a possible biomarker for environmental exposures to carcinogens.

A t(14;18) chromosomal translocation is found in approximately 85% of follicular lymphomas by both cytogenetic and molecular analyses. This rearrangement deregulates expression of the bcl-2 proto-oncogene by translocation into the immuno-globulin heavy chain locus and is probably mediated by illegitimate V(D)J recombination. We have developed a quantitative nested PCR method for detecting this event in lymphocytes of healthy individuals. Genomic DNA is purified from peripheral blood lymphocytes, and 2.5 microg (representing 4 X 10(5) cells) are amplified with translocation-specific primers under conditions in which a single copy, if present, will give a detectable PCR product. Multiple replicates are analyzed for each individual, and Poisson statistics are then used to estimate the translocation mutant frequency. We have examined lymphocyte DNA from 34 healthy individuals by this assay and found the frequency of cells with t(14;18) to range from <0.8-96X10(-7). The molecular nature of the translocations has been investigated by determining the DNA sequence at the translocation junctions. In several individuals, multiple isolates of the same translocation event were recovered, indicating that the cell with the original translocation had undergone clonal expansion. In addition, multiple independent translocations were shown to occur within an individual. Since this translocation appears to be one step in the progression of a normal cell to a cancer cell, this assay may have utility as an effects biomarker for environmental carcinogen exposure.

Adult↗

Seroma prevention in a rat mastectomy model: use of a light-activated fibrin sealant.

Seroma formation following mastectomy and axillary dissection remains a common and significant problem contributing to patient morbidity and health-care costs. Previous data have suggested that fibrin sealant (FS), a biological adhesive, is capable of controlling lymphatic leakage and assisting with skin graft adhesion. In this study, the use of an experimental, light-activated FS under development by CryoLife (CFS) was evaluated in a rat mastectomy model in order to reduce seroma formation. CFS is a premixed form of FS, containing an inactivator that is reversed in the presence of light, causing sealant to form. In this model, rats underwent mastectomy and extensive dissection of the axillary lymphovasculature. Next, 1 ml of saline or FS was applied to the operative site and the wound was closed. Three groups of animals were evaluated 5 days postoperatively by measuring the volume (in milliliters) of seroma able to be aspirated from the surgical site. The saline control group (N = 20) had a seroma volume (mean +/- standard deviation [SD]) of 4.2 +/- 2.9 ml, while a form of CFS containing human fibrinogen (80 to 100 mg per milliliter) and human thrombin (20 U per milliliter) (N = 20) had a significantly smaller seroma volume of 1.1 +/- 1.6 ml (p < 0.001 analysis of variance). University of Virginia (UVA) FS, containing human fibrinogen (20 mg per milliliter) and bovine thrombin (500 U per milliliter) (N = 20), had a seroma volume of 2.0 +/- 1.6 ml (p < 0.01, compared to control; p > 0.2, compared to CFS). Thus, this form of CFS significantly reduced seroma formation compared to saline control and also appeared to result in a smaller fluid accumulation than with UVA FS, although this trend was not statistically significant. These data suggest that the use of CFS may help to reduce seroma formation in humans.

Animals↗

Acrylamide: a review of its genotoxicity and an assessment of heritable genetic risk.

An updated review of the genotoxicity studies with acrylamide is provided. Then, using data from the studies generating quantitative information concerning heritability of genetic effects, an assessment of the heritable genetic risk presented by acrylamide is presented. The review offers a discussion of the reactions and possible mechanisms of genotoxic action by acrylamide and its epoxide metabolite glycidamide. Several genetic risk approaches are discussed, including the parallelogram, direct (actually a modified direct), and doubling dose approaches. Using data from the specific-locus and heritable translocation assays, the modified direct and doubling dose approaches are utilized to quantitate genetic risk. Exposures of male parents to acrylamide via inhalation, ingestion, and dermal routes are also quantitated. With these approaches and measurements and their underlying assumptions concerning extrapolation factors (including germ cell stage specificity, DNA repair variability, locus specificity), number of human loci associated with dominant disease alleles, and spontaneous mutation rates, an assessment of heritable genetic risk for humans is calculated for the three exposure scenarios. The calculated estimates for offspring from fathers exposed to acrylamide via drinking water are up to three offspring potentially affected with induced genetic disease per 10(8) offspring. Estimates for inhalation or dermal exposures suggest higher risks for induced genetic disease in offspring from fathers exposed in occupational settings.

Acrylamide↗

Germ line specific factors in chemical mutagenesis.

Chemical mutagenesis test results have not revealed evidence of germ line specific mutagens. However, conventional assays have indicated that there are male-female differences in mutagenic response, as well as quantitative/qualitative differences in induced mutations which depend upon the particular cell stage exposed. Many factors inherent in the germ line can be speculated to influence chemical transport to, and interaction with, target cell populations to result in mutagenic outcomes. The level of uncertainty regarding the general operation of such factors, in combination with the limited availability of chemical test data designed to address comparative somatic and germ cell mutagenesis, leaves open the question of whether there are mutagens specifically affecting germ cells. This argues for a conservative approach to interpreting germ cell risk from somatic cell mutation analysis.

Animals↗

Mutagenicity and clastogenicity of 3-chloro-4-(dichloromethyl)-5-hydroxy-2(5H)-furanone (MX) in L5178Y/TK+/(-)-3.7.2C mouse lymphoma cells.

3-chloro-4-(dichloromethyl)-5-hydroxy-2(5H)-furanone (MX) was tested without exogenous activation in L5178Y/TK+/(-)-3.7.2C mouse lymphoma cells for mutation at the thymidine kinase locus and for clastogenicity. At a concentration of 0.75 micrograms/ml, the induced mutant frequency was 1027 per 10(6) survivors (survival = 11%). A concentration-related increase of large and small colony mutants was observed, but the majority of the MX induced mutants formed small colonies, consistent with the positive clastogenic response that was observed. MX primarily induced chromatid breaks and rearrangements (30 chromatid and 4 chromosome aberrations per 100 cells) at the 0.75 microgram/ml dose. These studies indicate that MX induces a broad spectrum of genetic damage.

Animals↗

Gene expression of hematoregulatory cytokines is elevated endogenously after sublethal gamma irradiation and is differentially enhanced by therapeutic administration of biologic response modifiers.

Prompt, cytokine-mediated restoration of hematopoiesis is a prerequisite for survival after irradiation. Therapy with biologic response modifiers (BRMs), such as LPS, 3D monophosphoryl lipid A (MPL), and synthetic trehalose dicorynomycolate (S-TDCM) presumably accelerates hematopoietic recovery after irradiation by enhancing expression of cytokines. However, the kinetics of the cytokine gene response to BRMs and/or irradiation are poorly defined. One hour after sublethal (7.0 Gy) 60Cobalt gamma irradiation, B6D2F1/J female mice received a single i.p. injection of LPS, MPL, S-TDCM, an extract from Serratia marcescens (Sm-BRM), or Tween 80 in saline (TS). Five hours later, a quantitative reverse transcription-PCR assay demonstrated marked splenic gene expression for IL-1 beta, IL-3, IL-6, and granulocyte-CSF (G-CSF). Enhanced gene expression for TNF-alpha, macrophage-CSF (M-CSF), and stem cell factor (SCF) was not detected. Injection of any BRM further enhanced cytokine gene expression and plasma levels of CSF activity within 24 h after irradiation and hastened bone marrow recovery. Mice injected with S-TDCM or Sm-BRM sustained expression of the IL-6 gene for at least 24 h after irradiation. Sm-BRM-treated mice exhibited greater gene expression for IL-1 beta, IL-3, TNF-alpha, and G-CSF at day 1 than any other BRM. When challenged with 2 LD50/30 of Klebsiella pneumoniae 4 days after irradiation, 100% of Sm-BRM-treated mice and 70% of S-TDCM-treated mice survived, whereas < or = 30% of mice treated with LPS, MPL, or TS survived. Thus, sublethal irradiation induces transient, splenic cytokine gene expression that can be differentially amplified and prolonged by BRMs. BRMs that sustained and/or enhanced irradiation-induced expression of specific cytokine genes improved survival after experimental infection.

Animals↗

Cytotoxic T-lymphocyte response to autologous human squamous cell cancer of the lung: epitope reconstitution with peptides extracted from HLA-Aw68.

Cytotoxic T-lymphocytes (CTLs) specific for autologous human squamous cell cancer of the lung were generated by stimulation of peripheral blood lymphocytes with autologous tumor cells in vitro. The CTL line was >97% CD3+, CD8+, CD16- and produced tumor necrosis factor-alpha, gamma-interferon, and granulocyte-macrophage colony-stimulating factor after stimulation with autologous tumor. The CTLs lysed autologous tumor but failed to recognize autologous or histocompatibility leukocyte antigen-matched lymphoid cells, K562, or allogeneic tumor cells of several histological types. Antibody-blocking studies suggested that the CTLs recognized one or more antigens presented by the class I major histocompatibility complex molecule Aw68. To characterize these antigens further, histocompatibility leukocyte antigen Aw68 molecules were extracted from the squamous cell cancer of the lung tumor line by immunoaffinity chromatography, and the associated peptides were eluted in acid and separated by reversed-phase high-performance liquid chromatography. Reconstitution of the CTL epitope was evaluated by adding these peptides to autologous Epstein-Barr virus-transformed B-cells. Two peaks of reconstituting activity were observed, suggesting that these CTLs recognize at least two Aw68-associated peptides. This study confirms the existence of a CTL response against autologous human squamous cell cancer of the lung and suggests that this CTL response is directed against peptide epitopes presented by the class I major histocompatibility complex molecules. It is anticipated that this approach will permit identification of peptide epitopes for lung cancer-specific CTLs.

Carcinoma, Squamous Cell↗

Multiplex PCR analysis of in vivo-arising deletion mutations in the hprt gene of human T-lymphocytes.

A multiplex polymerase chain reaction (PCR) procedure was adapted for the rapid and efficient evaluation of deletions of the hypoxanthine guanine phosphoribosyltransferase (hprt) gene in human T-lymphocytes. The hprt clonal assay was used to isolate in vivo-arising hprt-deficient T-cells from six healthy males. Mutant frequencies ranged from 9-27 x 10(-6). Simple crude cellular extracts from 223 mutants were analyzed for hprt gene deletion. Sixteen (7.2%) were found to be due to total gene deletion and 22 (9.9%) were due to partial gene deletion. The relatively high frequency of total gene deletions was caused by replicate isolates of a single mutational event as shown by single-strand conformation polymorphism (SSCP) analysis of rearranged T-cell receptor (TCR)-gamma genes. Eighteen of the 22 partial hprt gene deletion mutants were determined to be of independent origin based on a unique hprt mutation or SSCP-TCR -gamma pattern. One-half (9/18) of the partial deletion mutants involved all or part of exon 4 alone, suggesting that this region of the hprt gene is prone to deletion. The small deletions effecting exon 1 (1 mutant), exon 2 (2 mutants), and exon 4 (6 mutants) would not have been detected by conventional Southern blot analysis and may represent a new, previously unrecognized class of mutations. The ready isolation of such intragenic deletions will allow the characterization of breakpoint junctions and may provide insights into the important processes of DNA breakage and rejoining.

Adult↗

Results of zone I and zone II flexor tendon repairs in children.

In a combined study of three hand surgery practices, 78 patients younger than 16 years who had sustained flexor tendon lacerations in zone I or zone II of 95 digits were available for critical evaluation. The average postrepair follow-up period was 24 months (range, 3-144 months). Patient age was divided into three groups: 0-5 years, 6-10 years, and 11-15 years. Performance of all digits was assessed to determine the percentage return of normal digital function following repair. Data were analyzed to determine the effect of age, the effect of varying periods of postrepair immobilization, and the long-term changes in digital performance resulting from growth. All profundus repairs in zone I returned excellent function. Isolated profundus and combined profundus and superficialis repairs in zone II achieved comparable results when managed with an early passive motion program or following immobilization for 3 or 4 weeks. Immobilization for longer than 4 weeks resulted in an appreciable deterioration of function. Digital motion following zone II flexor digitorum profundus and superficialis injuries treated with less than 4 weeks of immobilization or early motion was not significantly different in the three age groups studied. Digits with associated digital nerve and/or palmar plate lacerations fared less favorably when compared with isolated tendon lacerations. In many digits, a modest improvement in digital motion was found when patients returned after several years of growth.

Adolescent↗

Deletion mutations in the hprt gene of T-lymphocytes as a biomarker for genomic rearrangements important in human cancers.

The DNA sequence of 11 in vivo-arising intragenic deletion junctions occurring in the hypoxanthine-guanine phosphoribosyltransferase (hprt) gene of human T-lymphocytes was determined. These deletions ranged in size from 16 bp to 4057 bp. Extensive homology was not found at the deletion breaksites, indicating that non-homologous recombination was responsible for these deletions. Short regions of homology (1-3 nucleotides) at the deletion termini, which may direct the recombination event, were found in seven of the mutations. Only one mutation had an unaccounted for nucleotide at the junction. V(D)J recombinase recognition sequences, previously identified at other hprt deletion breaksites, were not present. Such features are also found at the deletion and translocation junctions of rearranged oncogenes and suppressor oncogenes. The ability to isolate and molecularly analyze deletion mutations occurring in vivo in peripheral human T-lymphocytes allows the assay of DNA breakage/rejoining events. Such a system may serve as a biomarker of exposure to environmental and occupational agents which may be important in the etiology of cancer.

Adult↗

An epidemic of avian and human psittacosis.

Psittacosis may occur in epidemic or sporadic form. We report an outbreak of avian and human psittacosis associated with an aviary in Philadelphia, Pa. The epidemic spread among birds in the aviary and then to men and women who were in contact with the birds. Chlamydia psittaci was cultured from infected birds, and the human patients were evaluated clinically and serologically. After proper treatment of the birds, cleaning of their cages, and institution of appropriate bird-handling techniques, the outbreak among the birds resolved. The human patients were treated, and no subsequent cases have been seen.

Adolescent↗

Genotoxicity of three pyridine compounds to L5178Y mouse lymphoma cells.

The L5178Y mouse lymphoma assay was used to examine the potential mutagenicity of three halogenated pyridine compounds. Position effects of the halogen moiety and the role of metabolic activation were analyzed based on induced mutant frequency, gross chromosome aberrations, and micronuclei. Without activation, 2-chloropyridine, 3-chloropyridine, and 2-chloro-5-trifluoromethylpyridine produced a small increase in mutant frequency; only the 2-chloropyridine activity was significantly increased with activation. All three compounds were also clastogenic as demonstrated by increases in chromosome aberrations and micronuclei (except for 2-chloro-5-trifluoromethylpyridine which did not induce micronuclei either with or without activation).

Animals↗

Quantification and molecular characterization of hprt mutants of human T-lymphocytes.

Somatic mutations have been implicated as critical early events in carcinogenesis. Point mutations, deletions, and translocation events have been shown to activate oncogenes or inactivate suppressor oncogenes. In human population monitoring, quantitative analysis of mutation events that affect gene function is limited to those genes whose cellular phenotypes can be identified by selection procedures and to those tissues (like blood) that are accessible for analysis. In an effort to determine the frequency and types of mutations that can be detected at the hypoxanthine guanine phosphoribosyltransferase (hprt) gene, we have used the T-cell cloning assay and have developed a strategy to propagate mutants and screen for point mutations and breakage events. Early in the clonal expansion of mutants, 1-2 x 10(4) cells are prepared as a crude cell lysate, and a sample is analyzed using the multiplex polymerase chain reaction (PCR). Those mutants that yield altered DNA fragments are then expanded for Southern blot hybridization, PCR, flanking probe isolation, and DNA sequencing. To date we have found presumed point mutations, intragenic deletions, and deletions that extend outside of the hprt gene. By analyzing mutations in selectable, nonessential gene markers, it should be possible to understand mechanisms of both spontaneous and induced genetic damage. An association of these specific genetic events with human diseases and the evaluation of the ability of environmental chemicals to induce these specific types of mutations will lead to a rational basis for evaluating risks from various chemical exposures.

Cells, Cultured↗

Diagnosis and treatment of atraumatic vascular insufficiency of the upper extremity: female smoker's syndrome.

A retrospective analysis of 30 angiograms in 29 patients performed at Doctor's Hospital since June of 1989 was carried out. Of these, 15 patients with 16 involved extremities presented with no antecedent trauma and significant symptoms of arterial insufficiency with impending digital necrosis. Eleven were female and four were male. Underlying medical problems included renal failure in four, diabetes in two, scleroderma in two and vasculitis in one. A unique group of six patients had no prior underlying medical problems. All six patients were female and all were smokers. A surprisingly high incidence of major arterial occlusion was noted. The radiographic features appeared distinct from the common causes of vascular insufficiency in the hand, that is, Raynaud's, thromboangiitis obliterans (Buerger's disease), and ulnar artery thrombosis from repetitive microtrauma (hypothenar hammer syndrome). This review is intended to discuss the evaluation and management of this group of patients.

Amputation, Surgical↗

In vitro mammalian mutagenesis as a model for genetic lesions in human cancer.

Recently in vitro assays of mutagenesis have been criticized as being poorly predictive of long-term in vivo rodent assays of carcinogenicity. Questions have also been raised concerning the relevance of rodent assays to human risk. In vitro assays using mammalian cells can detect most types of genetic lesions thought to be important in human malignant disease. Molecular and cytogenetic analyses of mutations induced by a variety of genotoxic compounds at the heterozygous thymidine kinase locus in mouse lymphoma cells indicate that this in vitro assay does indeed register the range of genetic lesions recently found in a wide variety of human tumors. The types and complexity of the induced lesions are reflected in mutant colony phenotype in a compound-specific fashion. These studies point to the use of appropriate in vitro mammalian mutagenesis assays as new model systems for dissecting the genetic lesions important in human carcinogenesis, and as a means of determining the potential for compounds to induce such lesions.

Animals↗

Large deletions are tolerated at the hprt locus of in vivo derived human T-lymphocytes.

A cloning assay was used to recover hprt- T-lymphocytes from adult human males. Analysis of crude cellular extracts by polymerase chain reactions (PCRs) demonstrated that 7% (16/218) of the hprt mutations were due to total deletion of the hprt gene. 14 of the 16 mutants were examined by PCR for the presence of flanking DNA to determine the extent of the deletions. The deletion mutation in 13 mutants was at least 350 kb with 5 of these deletions being at least 700 kb. The largest deletions were greater than 15 times the size of the hprt gene. Therefore, large deletions are tolerated at the hprt locus of human T-lymphocytes.

Adult↗

V(D)J recombinase-mediated deletion of the hprt gene in T-lymphocytes from adult humans.

The hprt T-cell cloning assay allows the detection of mutations occurring in vivo in the hypoxanthine-guanine phosphoribosyltransferase (hprt) gene of T-lymphocytes. We have shown previously that the illegitimate activity of V(D)J recombinase accounts for about 40% of the hprt mutations in T-lymphocytes of human newborns as measured with umbilical cord blood samples (Fuscoe et al., 1991). This mechanism results in deletion of hprt exons 2 + 3. In this report, we examined a collection of 314 HPRT-deficient clones derived from adult humans for evidence that the mutations were caused by this mechanism by analyzing exons 2 + 3 deletion mutations. DNA sequence analysis of deletion breakpoint junctions showed that 8 of the mutations were the result of V(D)J recombinase activity. The frequency of the recombinase-mediated mutations was similar in the adults and newborns (2-4 x 10(-7). However, since the hprt mutant frequency is about 10-fold higher in the adult than in the newborn, the recombinase-mediated mutations account for only a few percent of the adult mutations. These mutations are likely to have occurred during early development and persist into adulthood. Unregulated expression of V(D)J recombinase activity may be an important mechanism for genomic rearrangements in the genesis of cancer.

Adult↗

Synthetic trehalose dicorynomycolate and antimicrobials increase survival from sepsis in mice immunocompromised by radiation and trauma.

When mammalian antimicrobial defenses are compromised by radiation, death from sepsis may occur. Tissue trauma in irradiated hosts significantly increases mortality from bacterial infections and makes antimicrobial treatments more difficult than when individuals are subjected to trauma or radiation alone. We determined that postirradiation therapy with the immunomodulator synthetic trehalose dicorynomycolate (S-TDCM) and antimicrobials increases survival in mice after lethal irradiation and tissue trauma. Single agent therapy with systemic oxacillin, gentamicin, ofloxacin, and S-TDCM did not increase survival. Topical treatment of the injury with gentamicin cream in addition to systemic therapy with oxacillin or S-TDCM was necessary to enhance survival. Therapy with gentamicin and S-TDCM had a synergistic effect on survival. Therapies combining augmentation of non-specific host defense mechanisms with antimicrobials may be valuable in treating irradiated patients also sustaining tissue trauma.

Animals↗